Discover how urban grime acts as a dynamic chemical ecosystem that transforms and recycles toxic pollutants in cities worldwide.
Discover how desktop scanning electron microscopy is revolutionizing plant-insect interaction research with minimal sample preparation.
How scientists are reverse-engineering C4 photosynthesis to feed the planet and cool the globe.
Explore how catalytic hydrotreating transforms solvent refined coal (SRC-II) into clean fuel, with insights on water's surprising role in enhancing catalyst performance.
Exploring the intricate relationship between soil, plants, and atmosphere through iLEAPS research on climate change and ecosystem interactions.
Exploring the scientific advancements in fly-ash based bio-fertilizers and comparing their efficacy with traditional chemical fertilizers in wheat production.
Discover how zinc nanoparticles of different sizes reduce cadmium accumulation in rice while enhancing nutritional value through innovative agricultural nanotechnology.
Discover how researchers are optimizing sorghum cultivation through strategic irrigation practices and planting densities to address global water scarcity challenges.
Explore cutting-edge biochemical strategies for detecting and detoxifying environmental toxins through biosensors, bioremediation, and machine learning approaches.
Discover how kilo-plants are revolutionizing chemical development by integrating product design, process engineering, and manufacturing operations in a compact, automated system.